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The effects of orientation and crystallinity on the solvent‐induced crystallization of poly(ethylene terephthalate). II. Physical structure and morphology

机译:取向和结晶度对聚对苯二甲酸乙二醇酯溶剂诱导结晶的影响。二、物理结构与形态

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AbstractThis series of papers summarizes the results of an experimental research program designed to establish the effects of preexisting orientation and crystallinity on the solvent‐induced crystallization of poly(ethylene terephthalate) films. Dimethylformamide was used as a model for a strongly interacting solvent. This paper deals with the morphological and structural modifications induced by the solvent crystallization process. The effects on the structure and morphology of the solvent crystallization were dominated by surface cavitation, creation of voids, and by changes in the degree of crystallinity. The surface structure varied from a spherulitic cavitated structure for films of low orientations (low draw ratios) to a smooth surface at the higher draw ratios. In addition to the change in the surface morphology, an internal void structure was formed due to crystallization taking place in a swollen state. The formation of voids is dependent on the treatment temperature, draw ratio, and the method of solvent removal. The voids collapse upon annealing at high temperatures. Increases in the degree of crystallinity and changes in orientation were dependent on the treatment temperature. The crystallite size goes through a maximum at an intermediate degree of orientation. The crystalline orientation decreases with increasing treatment temperature. The structures formed during solvent treatments did not show any characteristic premelting endotherms at the low draw ratios. In the case of higher draw ratios, a small premelting endotherm was noticeable at a temperature 70°C greater than that of the solvent treatme
机译:摘要本系列论文总结了一项实验研究计划的结果,旨在确定预先存在的取向和结晶度对聚对苯二甲酸乙二醇酯薄膜溶剂诱导结晶的影响。二甲基甲酰胺被用作强相互作用溶剂的模型。本文研究了溶剂结晶过程引起的形态和结构变化。对溶剂结晶结构和形貌的影响主要有表面空化、空隙的产生和结晶度的变化。表面结构从低取向薄膜(低拉伸比)的球晶空化结构到高拉伸比的光滑表面不等。除了表面形貌的变化外,由于在膨胀状态下发生结晶,还形成了内部空隙结构。空隙的形成取决于处理温度、拉伸比和溶剂去除方法。在高温下退火时,空隙会塌陷。结晶度的增加和取向的变化取决于处理温度。微晶尺寸在中等取向度处达到最大值。结晶取向随着处理温度的升高而降低。在低拉伸比下,溶剂处理过程中形成的结构没有显示出任何特征性的预熔吸热。在拉伸比较高的情况下,在比溶剂处理温度高 70°C 的温度下,预熔吸热很小

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